The invention relates to a device, and more particularly, to a device with a retractable viewfinder.
A device such as a digital camera shown in
It is therefore desirable to provide a retractable viewfinder to further reduce occupied space in the device.
Accordingly, a device is disclosed comprising a body, a viewfinder, and a linking mechanism. The viewfinder is rotatably connected to the body. The viewfinder may rotate between a retracted position and an extended position. The linking mechanism is connected to and rotates the viewfinder.
Embodiments of the invention further comprise a driving mechanism connected to and driving the linking mechanism. The driving mechanism may be a pushrod or button.
The invention can be more fully understood by reading the subsequent detailed description in conjunction with the examples and references made to the accompanying drawings, wherein:
The linking mechanism 23 comprises a first rack 231, a first gear 232, and a rotating shaft 233. The first rack 231 connects to the pushrod 24, the first gear 232 engages the first rack 231, and the rotating shaft 233 connects the viewfinder 22 and the first gear 232. Thus, when the pushrod 24 is operated, the first rack 231 moves therewith, and the first gear 232, the rotating shaft 233, and the viewfinder 22 are rotated, sequentially.
The linking mechanism 33 comprises a first worm shaft 331, a first worm gear 332, and a rotating shaft 333. The first worm shaft 331 connects to the button 34, the first worm gear 332 engages the first worm shaft 331, and the rotating shaft 333 connects the viewfinder 32 and the first worm gear 332. Thus, when the button 34 is rotated, the first worm shaft 331, the first worm gear 332, the rotating shaft 333, and the viewfinder 32 are rotated, sequentially.
The linking mechanism 53 in this embodiment is similar to the first embodiment, and is thus omitted.
In this embodiment, the driving mechanism 54 comprises a second rack 542, a second gear 543, a second worm gear 544, a second worm shaft 545, a third gear 546, and a fourth gear 547. The second rack 542 is disposed on the switch 55. The second gear 543 engages the second rack 542, the fourth gear 547 engages the second gear 543, the second worm gear 544 and the fourth gear 547 are coaxial, the second worm shaft 545 engages the second worm gear 544, and the third gear 546 is disposed at an end of the second worm shaft 545 and engages the first rack 531 of the linking mechanism 53.
When the switch 55 is operated, the second rack 542 thereon rotates the second gear 543, and the fourth gear 547 rotates therewith. Since the second worm gear 544 and the fourth gear 547 are coaxial, the second worm gear 544 rotates together with the fourth gear 547. The second worm gear 544 rotates the second worm shaft 545, and the third gear 546, connected to the second worm shaft 545, rotates therewith, such that the third gear 546 drives the linking mechanism 53.
When operated, the switch 55 drives the driving mechanism 54 and linking mechanism 53 sequentially, such that the viewfinder 52 rotates between the retracted position and the extended position.
The linking mechanism 63 in this embodiment is similar to the second embodiment, and is thus omitted.
In this embodiment, the driving mechanism 64 comprises a second rack 642, a second gear 643, a second worm gear 644, a second worm shaft 645, a third worm gear 648, and a fifth gear 649. The second rack 642 is disposed on the switch 65. The second gear 643 engages the second rack 642, and since the fifth gear 649 and the second gear 643 are coaxial, the second worm gear 644 engages the fifth gear 649, the second worm shaft 645 engages the second worm gear 644, and the third worm gear 648, disposed at an end of the second worm shaft 645, engages the first worm shaft 631 of the linking mechanism 63.
When the switch 65 is operated, the second rack 642 thereon rotates the second gear 643. Since the fifth gear 649 and the second gear 643 are coaxial, the fifth gear 649 rotates with the second gear 643. The fifth gear 649 rotates the second worm gear 644, and the second worm gear 644 rotates the second worm shaft 645, and the third worm gear 648, connected to the second worm shaft 645, rotates therewith, such that the third worm gear 648 drives the linking mechanism 63. In this embodiment, the fifth gear 649 is helical.
Operating the switch 65 can turn on or off the device. When operated, the switch 65 drives the driving mechanism 64 and linking mechanism 63 sequentially, such that the viewfinder 62 rotates between the retracted position and the extended position.
The linking mechanism and the driving mechanism mentioned can vary according to different requirements. The combination of the linking and the driving mechanisms can alternatively be applied in a device with a retractable viewfinder.
While the invention has been described by way of example and in terms of preferred embodiment, it is to be understood that the invention is not limited thereto. On the contrary, it is intended to cover various modifications and similar arrangements as would be apparent to those skilled in the art. Therefore, the scope of the appended claims should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements.
Number | Date | Country | Kind |
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93112622 | May 2004 | TW | national |